Search results for "Phosphine"

showing 10 items of 618 documents

P-Chirogenic Triazole-Based Phosphine: Synthesis, Coordination Chemistry, and Asymmetric Catalysis

2020

chemistry.chemical_classification010405 organic chemistryOrganic ChemistryEnantioselective synthesisTriazole010402 general chemistry01 natural sciencesCombinatorial chemistry0104 chemical sciencesCoordination complexchemistry.chemical_compoundchemistryTransition metalPhysical and Theoretical ChemistryPhosphineEuropean Journal of Organic Chemistry
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Complexation of phosphine ligands with peracetylated β-cyclodextrin in supercritical carbon dioxide: Effect of temperature and cosolvent on the equil…

2009

Abstract The interaction between peracetylated-β-cyclodextrin and tert-butyl and adamantyl functionalized triphenylphosphine derivatives was studied in supercritical carbon dioxide (scCO 2 ) based solvent media by UV–vis spectroscopy. The equilibrium constant for a 1:1 complexation reaction was obtained from titration spectra both in pure carbon dioxide and in the presence of methanol as a cosolvent in the temperature range 308–323 K to estimate the internal energy and entropy of the inclusion equilibrium. The values of the equilibrium constants were found significantly smaller than those obtained in aqueous solution with analogous phosphines and substantially independent of the nature of t…

chemistry.chemical_classificationAqueous solutionSupercritical carbon dioxideCyclodextrinChemistryGeneral Chemical EngineeringSettore ING-IND/27 - Chimica Industriale E TecnologicaCondensed Matter PhysicsSolventchemistry.chemical_compoundPhysical chemistryOrganic chemistryMethanolPhysical and Theoretical ChemistryTriphenylphosphineAcetylated cyclodextrin Supercritical carbon dioxide UV–vis absorption spectroscopy Inclusion complexes Complex stability constantEquilibrium constantPhosphine
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The structure of a dinuclear silver(I) complex: Ag2[S2C2(CN)2] [P(C6H5)3]4

1986

Abstract The crystal structure of the dimeric Ag maleonitriledithiolate complex, Ag2[S2C2(CN)2] [P(C6- H5)3]4 (1), has been performed. Complex 1 crystallizes in the space group P21/c with a = 12.2898(77), b = 23.8325(91), c = 23.1790(118) A, β = 101.315(43)° and Z = 4. Refinement using 3253 reflections with Fo2>3σ(Fo2) yielded R = 0.0662, Rw= 0.0669. The most interesting aspect of the structure is the strong bridging interaction of the chelating maleonitriledithiolate ligand with the second Ag center, where a Ag-S distance of 2.478 A is observed. The residual bonding capability of the sulfur atoms in the chelating anion [Ag(S2C2(CN)2)(PPh3)2]− for [Ag(PPh3)2]+ is demonstrated.

chemistry.chemical_classificationChemistryStereochemistrychemistry.chemical_elementCrystal structureSulfurIonInorganic Chemistrychemistry.chemical_compoundCrystallographyX-ray crystallographyMaterials ChemistryMoleculeChelationPhysical and Theoretical ChemistryTriphenylphosphineInorganic compoundInorganica Chimica Acta
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Host–guest inclusion complexes between peracetylated β-cyclodextrin and diphenyl(4-phenylphenyl)phosphine : computational studies

2006

PM3 and molecular dynamic calculations were performed upon the inclusion complexation of peracetylated β-cyclodextrin (Per-Ac-β-CD) with diphenyl(4-phenylphenyl)phosphine (DBP). Results show that the 4-phenylphenyl part of the DBP phosphine fits tightly in the cavity of the Per-Ac-β-CD, leading to the formation of stable inclusion complexes. Complexation energies indicate that the complex formed via the primary side of the Per-Ac-β-CD is more stable than that formed via the secondary side. Electrostatic potential mapping and frontier orbital analysis suggest that van der Waals interaction constitute a major driving force in the complexation of the DBP and Per-Ac-β-CD.

chemistry.chemical_classificationCyclodextrin010405 organic chemistryStereochemistryChemistry[CHIM.MATE]Chemical Sciences/Material chemistry010402 general chemistryCondensed Matter Physics01 natural sciencesBiochemistryMedicinal chemistry0104 chemical sciences[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistrysymbols.namesakeSecondary sidechemistry.chemical_compoundMolecular dynamicssymbols[CHIM]Chemical SciencesPhysical and Theoretical Chemistryvan der Waals forceOrbital analysisPhosphineComputingMilieux_MISCELLANEOUS
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Rhodium and palladium complexes from 1,1′ and 1,2 ferrocenylphosphine as bidentate ligands. Versatile coordination

2000

Abstract The complexation of the mixed bidentate ligands 1-diphenylphosphino-1′-diphenylthiophosphinoferrocenyl and 1,2-bis(diphenylphosphino)ferrocenyl with rhodium(I) and palladium(II) species yield a range of mono- and dirhodium or palladium complexes. Their interest as possible catalysts for alkene hydroformylation and alkoxycarbonylation and Heck coupling reactions has been assessed. Fe[C5Me4P(S)Ph2][C5Me4PPh2]PdCl2 and Fe[C5H2-1,2-(PPh2)2-4-tBu][C5H5]PdCl2 have been characterized by single-crystal X-ray diffraction studies.

chemistry.chemical_classificationDenticityAlkeneOrganic Chemistrychemistry.chemical_elementBiochemistryCatalysisRhodiumInorganic Chemistrychemistry.chemical_compoundchemistryHeck reactionPolymer chemistryMaterials ChemistryOrganic chemistryPhysical and Theoretical ChemistryHydroformylationPhosphinePalladiumJournal of Organometallic Chemistry
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Functionalized Tri‐ and Tetraphosphine Ligands as a General Approach for Controlled Implantation of Phosphorus Donors with a High Local Density in Im…

2014

Supported phosphine ligands are auxiliaries of topical academic and industrial interest in catalysis promoted by transition metals. However, both controlled implantation and controlled conformation of ligands should be achieved to produce immobilized catalysts that are able to structurally “copy” efficient homogeneous systems. We provide herein a general synthetic strategy for assembling a new class of branched tetra- and triphosphine ligands with a unique controlled rigid conformation, and thus providing a high local density of phosphorus atoms for extended coordination to the metal center. We prepared new functionalized cyclopentadienyl (Cp) salts to design polyphosphines that were “ready…

chemistry.chemical_classificationDenticitychemistry.chemical_elementGeneral ChemistryPolymerHeterogeneous catalysisCombinatorial chemistryCatalysischemistry.chemical_compoundchemistryTransition metalCyclopentadienyl complexOrganic chemistryPhosphinePalladiumChemPlusChem
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High Enantiocontrol in the Intramolecular Cyclopropanation of Diazo Ketones Catalyzed by Dirhodium(II) Complexes with Ortho-Metalated Aryl Phosphine …

2001

[reaction: see text]. Chiral dirhodium(II) complexes, Rh2(O2CCF3)2(PC)2, [PCH = (p-CH3C6H4)3P, (m-CH3C6H4)3P], provide an excellent yield and a high enantiocontrol in the cyclopropanation of alpha-diazo ketones with gamma and delta double bonds. The ee values are significantly dependent on the solvent used; the best results are obtained using pentane.

chemistry.chemical_classificationDouble bondCyclopropanationStereochemistryArylOrganic ChemistryBiochemistryMedicinal chemistryCatalysisPentanechemistry.chemical_compoundchemistryIntramolecular forceDiazoPhysical and Theoretical ChemistryPhosphineOrganic Letters
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Bridgehead isomer effects in bis(phosphido)-bridged diiron hexacarbonyl proton reduction electrocatalysts

2017

The influence of the substitution, orientation and structure of the phosphido bridges in [Fe2(CO)6(μ-PR2)2] electrocatalysts of proton reduction has been studied. The isomers e,a-[Fe2(CO)6{μ-P(Ar)H}2] (1a(Ar): Ar = Ph, 2′-methoxy-1,1′-binaphthyl (bn′)), e,e-[Fe2(CO)6{μ-P(Ar)H}2] (1b(Ar): Ar = Ph, bn′) were isolated from reactions of iron pentacarbonyl and the corresponding primary phosphine, syntheses that also afforded the phosphinidene-capped tri-iron clusters, [Fe3(CO)9(μ-CO)(μ3-Pbn′)] (2) and [Fe3(CO)9(μ3-PAr)2] (3(Ar), Ar = Ph, bn′). A ferrocenyl (Fc)-substituted dimer [Fe2(CO)6{μ:μ′-1,2-(P(CH2Fc)CH2)2C6H4}] (4), in which the two phosphido bridges are linked by an o-xylyl group, was al…

chemistry.chemical_classificationHydrogen010405 organic chemistryDimerbridging ligandsphosphido ligandschemistry.chemical_elementSulfonic acid010402 general chemistryPhotochemistryElectrochemistryproton reduction01 natural sciences0104 chemical sciencesIron pentacarbonylCatalysisInorganic Chemistrychemistry.chemical_compoundCrystallographyiron complexeschemistryelectrocatalysista116PhosphineTetrahydrofuranDalton Transactions
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Mononuclear mixed oxosulfidomolybdate(VI) complexes with aminodicarboxylic ligands. Synthesis and spectroscopic characterization by multinulcear magn…

1993

Addition of B2S3 to a methanolic solution of the MoVIO3L2− complex (L=N,N-bis(ethanoic acid)-1-amino-2- methylthio-ethane) results in the formation of two different monomeric oxosulfidomolybdate(VI) complexes, [MoO2SL]2− and [MoOS2L]2− as indicated by 1H, 13C, 17O and 95Mo NMR spectroscopy and by the reaction of these two sulfurated species with triphenylphosphine. The temperature dependences of the 1H NMR spectra indicate exchange processes for both sulfido complexes. Their redox properties are discussed and contrasted with those observed for the parent fac-trioxo molybdenum(VI) complex. The primary synthetic route to mixed oxosulfido [MoO3−nSnL]2− complexes described here can be extended …

chemistry.chemical_classificationIminodiacetic acidStereochemistryCarboxylic acidNuclear magnetic resonance spectroscopyRedoxInorganic Chemistrychemistry.chemical_compoundMonomerchemistryDiaminePolymer chemistryMaterials ChemistryProton NMRPhysical and Theoretical ChemistryTriphenylphosphineInorganica Chimica Acta
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A Highly Regio-, Diastereo- and Enantioselective Intramolecular Cyclopropanation Reaction of a Racemic α-Diazo Ketone Catalyzed by Chiral ortho-Metal…

2003

Abstract A series of racemic dirhodium(II) compounds with two ortho-metalated aryl phosphine ligands in a head-to-tail arrangement Rh2(O2CR)2(pc)2 (pc=ortho-metalated aryl phosphine) (1a–k) were tested in the regio- and stereoselective cyclopropanation of racemic 1-diazo-6-methyl-3-(2-propenyl)-5-hepten-2-one 2, which possesses two different reactive CC double bonds for a five-membered-ring formation. The complexes Rh2(O2CCH3)2(pc)2 {pc=[(C6H4)P(C6H5)2], [(p-CH3C6H3)P(p-CH3C6H4)2], and [(C6H4)P(C6H5)(C6F5)]} (1a–d) successfully enhanced the cyclopropanation of trisubstituted versus monosubstituted CC bonds to give an 80:20 selectivity ratio. The reaction occurred with excellent diastereos…

chemistry.chemical_classificationKetoneDouble bondStereochemistryCyclopropanationArylOrganic ChemistryEnantioselective synthesisGeneral MedicineMedicinal chemistryCatalysisInorganic Chemistrychemistry.chemical_compoundchemistryStereoselectivityDiazoPhysical and Theoretical ChemistryPhosphineChemInform
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